首页> 外文会议>Medical laser applications and laser-tissue interactions VII >Electrical Stimulation vs. Pulsed and Continuous-Wave Optical Stimulation of the Rat Prostate Cavernous Nerves, In Vivo
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Electrical Stimulation vs. Pulsed and Continuous-Wave Optical Stimulation of the Rat Prostate Cavernous Nerves, In Vivo

机译:大鼠前列腺海绵体神经的电刺激与脉冲和连续波光学刺激

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摘要

Identification and preservation of the cavernous nerves (CNs) during prostate cancer surgery is critical for postoperative sexual function. Electrical nerve stimulation (ENS) mapping has previously been tested as an intraoperative tool for CN identification, but was found to be unreliable. ENS is limited by the need for electrode-tissue contact, poor spatial precision from electrical current spreading, and stimulation artifacts interfering with detection. Alternatively, optical nerve stimulation (ONS) provides noncontact stimulation, improved spatial selectivity, and elimination of stimulation artifacts. This study compares ENS to pulsed/CW ONS to explore the ONS mechanism. A total of eighty stimulations were performed in 5 rats, in vivo. ENS (4 V, 5 ms, 10 Hz) was compared to ONS using a pulsed diode laser nerve stimulator (1873 nm, 5 ms, 10 Hz) or CW diode laser nerve stimulator (1455 nm). Intracavernous pressure (ICP) response and nerve compound action potentials (nCAPs) were measured. All three stimulation modes (ENS, ONS-CW, ONS-P) produced comparable ICP magnitudes. However, ENS demonstrated more rapid ICP response times and well defined nCAPs compared to immeasurable nCAPs for ONS. Further experiments measuring single action potentials during ENS and ONS are warranted to further understand differences in the ENS and ONS mechanisms.
机译:前列腺癌手术期间海绵状神经(CNs)的识别和保存对于术后性功能至关重要。先前已经测试了电神经刺激(ENS)映射作为CN识别的术中工具,但发现这种方法不可靠。 ENS受电极组织接触,电流散布导致的空间精度差以及刺激伪影干扰检测的需求所限制。或者,光学神经刺激(ONS)可提供非接触刺激,改善的空间选择性并消除刺激伪影。这项研究将ENS与脉冲/ CW ONS进行了比较,以探索ONS机制。在5只大鼠体内总共进行了80次刺激。使用脉冲二极管激光神经刺激器(1873 nm,5 ms,10 Hz)或CW二极管激光神经刺激器(1455 nm)将ENS(4 V,5 ms,10 Hz)与ONS进行比较。测量了腔内压力(ICP)反应和神经复合动作电位(nCAPs)。三种刺激模式(ENS,ONS-CW,ONS-P)均产生可比较的ICP幅度。但是,与ONS不可估量的nCAP相比,ENS展示了更快的ICP响应时间和定义明确的nCAP。为了进一步了解ENS和ONS机制的差异,有必要进行进一步的实验来测量ENS和ONS期间的单个动作电位。

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  • 会议地点 Munich(DE)
  • 作者单位

    Department of Physics and Optical Science, University of North Carolina at Charlotte, NC;

    Department of Urology, Johns Hopkins Medical Institutions, Baltimore, MD;

    Department of Urology, Johns Hopkins Medical Institutions, Baltimore, MD;

    Department of Physics and Optical Science, University of North Carolina at Charlotte, NC,Department of Urology, Johns Hopkins Medical Institutions, Baltimore, MD;

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